Publication | Closed Access
Highly Stable Covalent Organic Framework Nanosheets as a New Generation of Electrochemiluminescence Emitters for Ultrasensitive MicroRNA Detection
111
Citations
50
References
2021
Year
A pyrene-based sp<sup>2</sup> carbon-conjugated covalent organic framework (COF) nanosheet (Py-sp<sup>2</sup>c-CON) with strong and stable electrochemiluminescence (ECL) emission was constructed by C═C polycondensation of tetrakis(4-formylphenyl)pyrene (TFPPy) and 2,2'-(1,4-phenylene)diacetonitrile, which was employed as a highly efficient ECL emitter to fabricate an ECL biosensor for the first time. The Py-sp<sup>2</sup>c-CON exhibited higher ECL intensity and efficiency than those of TFPPy, bulk Py-sp<sup>2</sup>c-COF, and imine-linked pyrene COF, not only because the pyrene luminophores and aggregation-induced emissive luminogens (cyano-substituted phenylenevinylene) were topologically linked into Py-sp<sup>2</sup>c-CON, which greatly increased the immobilization amount of luminophores and decreased the aggregation-caused quenching effect and nonradiative transition but also because the porous ultrathin structure of Py-sp<sup>2</sup>c-CON effectively shortened transport distances of an electron, ion, and co-reactant (S<sub>2</sub>O<sub>8</sub><sup>2-</sup>), which made more ECL luminophores be activated and thus efficiently increased the utilization ratio of luminophores. More interestingly, when Bu<sub>4</sub>NPF<sub>6</sub> was introduced into the Py-sp<sup>2</sup>c-CON/S<sub>2</sub>O<sub>8</sub><sup>2-</sup> system as a co-reaction accelerator, the ECL signal of Py-sp<sup>2</sup>c-CON was further amplified. As expected, the average ECL intensity of the Py-sp<sup>2</sup>c-CON/S<sub>2</sub>O<sub>8</sub><sup>2-</sup>/Bu<sub>4</sub>NPF<sub>6</sub> system was about 2.03, 5.76, 24.31, and 190.33-fold higher than those of Py-sp<sup>2</sup>c-CON/S<sub>2</sub>O<sub>8</sub><sup>2-</sup>, Py-sp<sup>2</sup>c-COF/S<sub>2</sub>O<sub>8</sub><sup>2-</sup>, TFPPy/S<sub>2</sub>O<sub>8</sub><sup>2</sup>,<sup>-</sup> and imine-linked pyrene COF/S<sub>2</sub>O<sub>8</sub><sup>2-</sup> systems. Considering these advantages, the Py-sp<sup>2</sup>c-CON/S<sub>2</sub>O<sub>8</sub><sup>2-</sup>/Bu<sub>4</sub>NPF<sub>6</sub> system was employed to prepare an ECL biosensor for microRNA-21 detection, which exhibited a broad linear response (100 aM to 1 nM) and a low detection limit (46 aM). Overall, this work demonstrated that sp<sup>2</sup> carbon CONs can be directly used as a high-performance ECL emitter, thus expanding the application scope of COFs and opening a new horizon to develop new types of ECL emitters.
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